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891.
介绍了微波场强计量测试的原理方法 ,主要介绍了在中文 WINDOWS95环境下利用 VB6 .0语言编程进行自动计量测试的研究情况以及测量不确定度分析。  相似文献   
892.
研究了采用红外热像图快速测试建筑物外表面温度场的方法,提出了一种基于信息融合的修正方法。  相似文献   
893.
I discuss a method for determining the strength and spatial structure of the coronal magnetic field by observations of the Faraday rotation of a radio galaxy which is in conjunction with the Sun. Given a knowledge of the plasma density in the outer corona, and the magnetic field sector structure (both independently available), the strength of the coronal field can be determined, as well as the magnitude of spatial variations on scales of 1000 km to several solar radii. Such knowledge is crucial for testing computational models of the solar corona, which are prominently featured in this meeting. Results are presented from observations with the Very Large Array radio telescope of the radio galaxy 3C228 on August 16, 2003, when the line of sight to the source was at heliocentic distances of 7.1−6.2R . The observations are consistent with a coronal magnetic field which is proportional to the inverse square of the distance in the range 6 ≤ r ≤ 10R , and has a value of 39 mG at 6.2R . The Faraday rotation is uniform across the source, indicating an absence of strong plasma inhomogeneity on spatial scales up to 35,000 km.  相似文献   
894.
895.
利用数值模拟方法对一种与无人飞行器后体一体化设计的二元保形大宽高比非对称膨胀喷管在地面状态的流场特性进行了研究,获得了尾喷管推力性能和三维流动特征随落压比的变化趋势。结果表明:虽然二元保形非对称膨胀喷管沿横向存在非等强度膨胀,但在研究范围内最佳落压比仍主要取决于上方短膨胀面结束位置面积与喉道面积之比;沿横向不等强度膨胀诱发的二次流及旋涡流动能够增强环境冷流与喷流之间的掺混;在研究的落压比范围内,随着落压比的增加喷管的推力性能变化很缓慢。  相似文献   
896.
介绍了从俄罗斯引进的用于交变磁场的国防标准——交变中磁标准装置的基本工作原理,以及对其设计方案的剖析。该标准装置工作频率(20~1 000)Hz,复现交变磁场强度(0.1~1 000)mT,在这一领域内代表国际最高水平。通过对其信号获取、磁场感应信号的放大处理、大电流的产生办法、安全互锁设计,以及整体系统理论计算的分析,为该领域内标准装置的国产化提供理论基础,具有较好的实用价值。  相似文献   
897.
针对相对平坦地形,采用线性化流体方程描述流场,并根据大气边界层特性进一步简化计算方法,即利用所谓地形影响系数快速求解感兴趣点(一般为风机位置)的流动速度;针对尾流影响,采用工程上广泛使用的修正Park模型来求解,尾流线性叠加并忽略较弱的尾流影响。文中介绍了一个已建典型海滨风电场的装机规模、地表粗糙度以及测风情况,并以此风电场为算例采用不同测风数据进行发电量计算,预测结果与实际发电量较好地吻合。最后探索了算例风电场各风机发电量不均衡原因,提出地形图大小对风场模拟准确性的影响,并从工程设计角度提出具体意见。  相似文献   
898.
This paper proposes a method for planning the three-dimensional path for low-flying unmanned aerial vehicle(UAV) in complex terrain based on interfered fluid dynamical system(IFDS) and the theory of obstacle avoidance by the flowing stream. With no requirement of solutions to fluid equations under complex boundary conditions, the proposed method is suitable for situations with complex terrain and different shapes of obstacles. Firstly, by transforming the mountains, radar and anti-aircraft fire in complex terrain into cylindrical, conical, spherical, parallelepiped obstacles and their combinations, the 3D low-flying path planning problem is turned into solving streamlines for obstacle avoidance by fluid flow. Secondly, on the basis of a unified mathematical expression of typical obstacle shapes including sphere, cylinder, cone and parallelepiped, the modulation matrix for interfered fluid dynamical system is constructed and 3D streamlines around a single obstacle are obtained. Solutions to streamlines with multiple obstacles are then derived using weighted average of the velocity field. Thirdly, extra control force method and virtual obstacle method are proposed to deal with the stagnation point and the case of obstacles’ overlapping respectively. Finally, taking path length and flight height as sub-goals, genetic algorithm(GA) is used to obtain optimal 3D path under the maneuverability constraints of the UAV. Simulation results show that the environmental modeling is simple and the path is smooth and suitable for UAV. Theoretical proof is also presented to show that the proposed method has no effect on the characteristics of fluid avoiding obstacles.  相似文献   
899.
Usually, it is very difficult to find out an analytical solution to thermal conduction problems during high temperature welding. Therefore, as an important numerical approach, the method of lines (MOLs) is introduced to solve the temperature field characterized by high gradients. The basic idea of the method is to semi-discretize the governing equation of the problem into a system of ordinary dif-ferential equations (ODEs) defined on discrete lines by means of the finite difference method, by which the thermal boundary condition with high gradients are directly embodied in formulation. Thus the temperature field can be obtained by solving the ODEs. As a numeri-cal example, the variation of an axisymmetrical temperature field along the plate thickness can be obtained.  相似文献   
900.
An uniform out-of-plane magnetic field component By0 is added to the equilibrium Harris sheet with plasma β = 0.5 and Lc = 0.5di (where Lc is the half-width of the equilibrium current layer and di is the ion inertial length). Driven by the continuous boundary inflows, the magnetic reconnections with the guide field By0/B0 ranging from 0 to 4.0 are investigated using a 2.5D Hall magnetohydro-dynamic (MHD) code developed from a multi-step implicit scheme. The features of the reconnection field are substantially altered in the presence of the guide field. The openness of the magnetic separatrix angle is slightly reduced and the anti-symmetric quadrupolar structure of By field and the symmetric distribution of plasma pressure P are replaced by an asymmetric By four-wing structure and an asymmetric P plot as a non-zero By0 is added. The decoupling of electrons and ions also occurs near the X line in the case with a finite By0, but the effect of initial By0 on the electron flow is greater than that on the ion flow. The reconnection rates at the X-line drops from 0.151 to 0.06, namely, ∂A/∂t is reduced by a factor of 2.5 as By0/B0 increases from 0 to 4.0. The reduction of reconnection rate might be related to the reducing openness of reconnection layer with the increasing By0.  相似文献   
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